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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Impact of oil-binder interaction on pore structure in paper coatings as studied by internal reflectance Part 2: Relation to structural expansion
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Impact of oil-binder interaction on pore structure in paper coatings as studied by internal reflectance Part 2: Relation to structural expansion

机译:内反射法研究油基结合剂对纸涂料孔隙结构的影响第2部分:与结构膨胀的关系

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In the case of ink setting on coated paper, significant decrease of accessible pore volume of the coating matrix can occur due to structural changes caused by swelling of latex binder particles when contacted with the vehicle of oil-based ink. The impact of latex swelling, reduced network connectivity and the subsequent effects on the dynamic of spatial liquid distribution characteristics within the expanded pore network were examined by a recently established optical reflectance measurement procedure based on the refractive index differences between the coating components and the surrounding medium present in the interparticle pores. GCC model coatings with latex binders displaying differing swelling characteristics were exposed to liquid supersource imbibition without application of external pressure. Effects of both linseed oil and mineral oil on binder swelling and consequent structural expansion were studied. It is proposed that the linear reflectance behaviour in the saturated region is related to the mechanical restriction on expansion at the transition between the saturated and partially filling regions of the porous structure, and is consistent with an approximate catenary form in the macroscopic coating dimensional change as a function of depth. A conceptual structural change factor based on the change of reflectance in the saturated region is introduced, and is shown to correlate with the porosity loss values. The results suggest differences in the structural change factors in relation to the equilibrium oil uptake, coating porosity loss, and liquid propagation. The structural change factor also correlates the reflectance gradient within the coating thickness with regard to oil uptake with binder content as the binder level is increased.
机译:在将油墨固着在涂布纸上的情况下,由于胶乳粘合剂颗粒与油基油墨的载体接触而膨胀,会导致结构变化,从而导致涂料基体的可利用孔体积显着减少。通过最近建立的基于涂层组分和周围介质之间折射率差异的光学反射率测量程序,检查了乳胶膨胀,降低的网络连通性以及对扩展的孔网络内空间液体分布特性动态的后续影响的影响存在于颗粒间的孔中。在不施加外部压力的情况下,将具有不同溶胀特性的胶乳粘合剂的GCC模型涂料暴露于液体超源吸收中。研究了亚麻籽油和矿物油对粘合剂溶胀和随之产生的结构膨胀的影响。提出在饱和区域的线性反射行为与多孔结构的饱和和部分填充区域之间的过渡处的膨胀的机械限制有关,并且与宏观涂层尺寸变化中的近似悬链线形式一致。深度的函数。介绍了基于饱和区中反射率变化的概念性结构变化因子,并显示出与孔隙度损失值相关。结果表明,结构变化因素与平衡吸油量,涂层孔隙率损失和液体扩散有关。随着粘合剂含量的增加,结构变化因子还将与油吸收有关的涂层厚度内的反射率梯度与粘合剂含量相关联。

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